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Published on: November 17, 2018
Inhibition of PCSK9 prevents and alleviates cholesterol gallstones through PPARα-mediated CYP7A1 activation
Zhenmei Chen1, Weiqing Shao2, Yitong Li2
1Hepatobiliary Surgery, Department of General Surgery, Huashan Hospital, Fudan University, 12 Urumqi Road, Shanghai 200040, China; Shanghai Institute of Infectious Disease and Biosecurity, Huashan Hospital, Fudan University, 12 Urumqi Road, Shanghai 200040, China.
Background & Aims:
Dysregulated cholesterol metabolism is the major factor responsible for cholesterol gallstones (CGS). Proprotein convertase subtilisin/kexin type 9 (PCSK9) plays a critical role in cholesterol homeostasis and its inhibitors secure approval for treating various cholesterol metabolic disorders such as hypercholesterolemia and cardiovascular diseases, but its role in CGS remains unclear. Our study aims to clarify mechanisms by which PCSK9 promotes CGS formation and explore the application of the PCSK9 inhibitor, alirocumab, in preventing and treating CGS.
Approach & Results:
The expressions of PCSK9 were notably increased in CGS patients' serum, bile, and liver tissues compared to those without gallstones. Moreover, among CGS patients, hepatic PCSK9 was positively correlated with hepatic cholesterol and negatively correlated with hepatic bile acids (BAs), suggesting PCSK9 was involved in disrupted hepatic cholesterol metabolism related to CGS. Mechanistically, in vitro experiments demonstrated that inhibition of PCSK9 enhanced nuclear expression of PPARα by diminishing its lysosomal degradation and subsequently activated CYP7A1 transcription. Finally, inhibition of PCSK9 prevented CGS formation and dissolved the existing stones in CGS mice by elevating the conversion of cholesterol into BAs through PPARα-mediated CYP7A1 activation. Additionally, serum PCSK9 level may function as a prognostic signature to evaluate the therapeutic efficacy of PCSK9 inhibitors.
Conclusions:
Inhibition of PCSK9 exerts preventive and therapeutic effects on CGS by activating PPARα-mediated CYP7A1 expression and facilitating the conversion of cholesterol into BAs, which highlights the potential of PCSK9 inhibition as a promising candidate for preventing and treating CGS in clinical applications.
Impact And Implications:
PCSK9 plays a pivotal role in cholesterol metabolism and its inhibitors are approved for clinical use in cardiovascular diseases. Our study observes inhibition of PCSK9 prevents and dissolves CGS by activating PPARα-mediated CYP7A1 expression and facilitating the conversion of cholesterol into BAs. Mechanistically, PCSK9 inhibition enhanced the nuclear expression of PPARα by diminishing its lysosomal degradation and subsequently activated CYP7A1 transcription. Our study sheds light on the new function and mechanism of PCSK9 in CGS, providing a novel preventive and therapeutic target with potential clinical applications.
Insights
Inhibition of Proprotein Convertase Subtilisin/Kexin type 9 (PCSK9) prevents and dissolves cholesterol gallstones (CGS) by enhancing bile acid production. This highlights PCSK9 inhibition as a potential treatment for CGS.
Area of Science:
- Metabolic disorders
- Cholesterol homeostasis
- Bile acid synthesis
Background:
- Dysregulated cholesterol metabolism is a primary cause of cholesterol gallstones (CGS).
- Proprotein Convertase Subtilisin/Kexin type 9 (PCSK9) is crucial for cholesterol homeostasis, with inhibitors approved for hypercholesterolemia and cardiovascular diseases.
- The specific role of PCSK9 in CGS pathogenesis remains largely unelucidated.
Purpose of the Study:
- To elucidate the mechanisms by which PCSK9 contributes to CGS formation.
- To investigate the therapeutic potential of PCSK9 inhibition, specifically using alirocumab, for CGS prevention and treatment.
Main Methods:
- Quantified PCSK9 expression in serum, bile, and liver tissues of CGS patients.
- Performed in vitro experiments to assess the impact of PCSK9 inhibition on nuclear PPARα expression and CYP7A1 transcription.
- Utilized a mouse model of CGS to evaluate the preventive and therapeutic effects of PCSK9 inhibition on gallstone formation and resolution.
Main Results:
- PCSK9 expression was significantly elevated in CGS patients and correlated with hepatic cholesterol and bile acid levels.
- PCSK9 inhibition enhanced nuclear PPARα expression by reducing its lysosomal degradation, subsequently activating CYP7A1 transcription.
- Inhibition of PCSK9 prevented CGS formation and dissolved existing gallstones in mice by promoting cholesterol conversion to bile acids via PPARα-mediated CYP7A1 activation.
Conclusions:
- PCSK9 inhibition demonstrates preventive and therapeutic efficacy against CGS.
- The mechanism involves activating PPARα-mediated CYP7A1 expression, thereby facilitating cholesterol conversion to bile acids.
- PCSK9 inhibition presents a promising novel therapeutic strategy for clinical application in CGS management.
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